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    임시의치와 스캔가능한 치유지대주를 이용한 고정성 임플란트 보철 수복 증례 = Multiple fixed implant-supported prosthesis using temporary denture and scannable healing abutment: a case report

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    https://www.riss.kr/link?id=A108894977

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The use of digital technology in fixed prosthetic treatment using implants enables predictive treatment through diagnosis and virtual surgery by integrating clinical and radiological information of patients. Existing digital scanning methods require several components to be removed, such as removing the healing abutment and connecting the scan body. In the scannable healing abutment developed in consideration of this point, scanning is performed directly on the healing abutment, maintaining soft tissue sealing and simplifying scanning. Digital technology can also be used when obtaining the intermaxillary relationship. Recently, various digital technologies have been reported to acquire the intermaxillary relationship of edentulous patients using surgical guides, patient-specific scanning devices, or scans of the inside of temporary dentures. In this case, the implant-supported fixed prosthesis treatment was performed through scanning the scannable healing abutment and the inner side of the temporary denture to obtain the intermaxillary relationship, thereby simplifying the treatment process and obtaining aesthetically and functionally excellent clinical results
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    The use of digital technology in fixed prosthetic treatment using implants enables predictive treatment through diagnosis and virtual surgery by integrating clinical and radiological information of patients. Existing digital scanning methods require s...

    The use of digital technology in fixed prosthetic treatment using implants enables predictive treatment through diagnosis and virtual surgery by integrating clinical and radiological information of patients. Existing digital scanning methods require several components to be removed, such as removing the healing abutment and connecting the scan body. In the scannable healing abutment developed in consideration of this point, scanning is performed directly on the healing abutment, maintaining soft tissue sealing and simplifying scanning. Digital technology can also be used when obtaining the intermaxillary relationship. Recently, various digital technologies have been reported to acquire the intermaxillary relationship of edentulous patients using surgical guides, patient-specific scanning devices, or scans of the inside of temporary dentures. In this case, the implant-supported fixed prosthesis treatment was performed through scanning the scannable healing abutment and the inner side of the temporary denture to obtain the intermaxillary relationship, thereby simplifying the treatment process and obtaining aesthetically and functionally excellent clinical results

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    참고문헌 (Reference)

    1 Joda T, "The virtual patient in dental medicine" 26 : 725-726, 2015

    2 Eliasson A, "The accuracy of an implant impression technique using digitally coded healing abutments" 14 (14): e30-8, 2012

    3 Atsuta I, "Soft tissue sealing around dental implants based on histological interpretation" 60 : 3-11, 2016

    4 Ramadan RE, "Registration of maxillomandibular relationship through a fully digital workflow for complete-mouth rehabilitation with screw-retained fixed implant-supported prostheses : A clinical report" 2023

    5 Ahmed WM, "Maxillary complete-arch implant-supported restoration : a digital scanning and maxillomandibular relationship workflow" 125 : 216-220, 2021

    6 Ender A, "In-vitro evaluation of the accuracy of conventional and digital methods of obtaining full-arch dental impressions" 46 : 9-17, 2015

    7 Abdulmajeed AA, "Complete-arch implant-supported monolithic zirconia fixed dental prostheses : A systematic review" 115 : 672-677, 2016

    8 Kim JE, "Complete assessment of occlusal dynamics and establishment of a digital workflow by using target tracking with a three-dimensional facial scanner" 63 : 120-124, 2019

    9 안교진 ; 이준석, "Comparison of the accuracy of implant digital impression coping" 대한턱관절교합학회 36 (36): 29-40, 2020

    10 Alghazzawi TF, "Advancements in CAD/CAM technology : Options for practical implementation" 60 : 72-84, 2016

    1 Joda T, "The virtual patient in dental medicine" 26 : 725-726, 2015

    2 Eliasson A, "The accuracy of an implant impression technique using digitally coded healing abutments" 14 (14): e30-8, 2012

    3 Atsuta I, "Soft tissue sealing around dental implants based on histological interpretation" 60 : 3-11, 2016

    4 Ramadan RE, "Registration of maxillomandibular relationship through a fully digital workflow for complete-mouth rehabilitation with screw-retained fixed implant-supported prostheses : A clinical report" 2023

    5 Ahmed WM, "Maxillary complete-arch implant-supported restoration : a digital scanning and maxillomandibular relationship workflow" 125 : 216-220, 2021

    6 Ender A, "In-vitro evaluation of the accuracy of conventional and digital methods of obtaining full-arch dental impressions" 46 : 9-17, 2015

    7 Abdulmajeed AA, "Complete-arch implant-supported monolithic zirconia fixed dental prostheses : A systematic review" 115 : 672-677, 2016

    8 Kim JE, "Complete assessment of occlusal dynamics and establishment of a digital workflow by using target tracking with a three-dimensional facial scanner" 63 : 120-124, 2019

    9 안교진 ; 이준석, "Comparison of the accuracy of implant digital impression coping" 대한턱관절교합학회 36 (36): 29-40, 2020

    10 Alghazzawi TF, "Advancements in CAD/CAM technology : Options for practical implementation" 60 : 72-84, 2016

    11 Jung HT, "Accuracy of implant impression techniques with a scannable healing abutment" 128 : 729-734, 2022

    12 Krahenbuhl JT, "Accuracy and precision of occlusal contacts of stereolithographic casts mounted by digital interocclusal registrations" 116 : 231-236, 2016

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